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Kamaruzzaman Sopian

Researcher at National University of Malaysia

Publications -  1080
Citations -  33829

Kamaruzzaman Sopian is an academic researcher from National University of Malaysia. The author has contributed to research in topics: Photovoltaic system & Solar energy. The author has an hindex of 84, co-authored 989 publications receiving 25293 citations. Previous affiliations of Kamaruzzaman Sopian include Universiti Tenaga Nasional & Universiti Putra Malaysia.

Papers
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Proceedings Article

Hybrid photovoltaic thermal collector (PVT) for the production of hot water and electricity

TL;DR: In this paper, a flat plate thermal collector with single glazing sheet was used to increase the efficiency of the photovoltaic solar collector under ambient temperature set between 21 to 36°C, fluid flow rate at 0.02kg/s and solar radiation between 700 to 800 W/m2.

Solar Collectors as Shading Devices for Kuala Lumpur, Malaysia

TL;DR: In this article, the authors explored the possibility of using solar collectors as external shading devices on walls of building and determined the ratio of beam radiation for collectors on vertical surface and inclined surface in Kuala Lumpur, Malaysia.
Journal ArticleDOI

Development and life cycle cost analysis of a solar hybrid HVAC system for use in buildings in tropical climates

TL;DR: In this paper , a two-stage hybrid desiccant cooling system is designed and simulated in TRNSYS software, using the aforementioned optimization potentials for a seminar room located at the National University of Malaysia (UKM), as a site study.
Proceedings ArticleDOI

Investigation of the annealing time effects on Cu deposited CdTe thin films for photovoltaic application

TL;DR: In this paper, the influence of different annealing times on the structural, topographical and electrical properties of CdTe thin films were examined by XRD, AFM and Hall Effect measurement, respectively.
Proceedings ArticleDOI

Investigation of buffer layers, front and back contacts for Zn x Cd 1−x S/CdTe photovoltaic

TL;DR: A numerical analysis has been performed utilizing Analysis of Microelectronic and Photonic Structures (AMPS 1D) simulator to explore the possibility of higher efficiency and stable Zn x Cd 1−x S/CdTe cells as discussed by the authors.